1. A transformer positioned on a circuit board, the transformer comprising:
a core assembly; and
a bobbin comprising a first winding frame to wrap primary winding coils thereon, a first winding chassis to receive the first winding frame therein, a pair of second winding chassis positioned at two opposite ends of the bobbin, a pair of second winding frames received in the pair of second winding chassis to wrap secondary winding coils thereon, and a receiving hole extending through the pair of second winding chassis and the first winding frame, wherein each of the pair of second winding frames comprises a plurality of pins mounted in the circuit board to fix the transformer on the circuit board, and a through hole communicating with the receiving hole to receive the core assembly, and wherein the first winding chassis comprises a pair of first sidewalls, and wherein the first winding frame is positioned between the pair of second winding chassis;
wherein first terminals of the primary winding coils creep over one of the pair of first sidewalls of the first winding chassis along a first direction to be attached to the circuit board, and wherein second terminals of the secondary winding coils are wrapped, in a second direction different from the first direction, on the pins of the second winding frame to be attached to the circuit board.
2. The transformer as recited in claim 1, wherein the first direction is opposite to the second direction.
3. The transformer as recited in claim 1, wherein the first direction is substantially perpendicular to the second direction.
4. The transformer as recited in claim 1, wherein the first winding chassis defines a first opening to receive the first winding frame therein and facing to the first direction, a pair of apertures communicating with the first opening, the receiving hole, and the through hole and located in a pair of second sidewalls of the first winding chassis, and a pair of slots located at a distal end of the one first sidewall of the first winding chassis to receive the first terminals of the primary winding coils.
5. The transformer as recited in claim 4, wherein the first winding frame comprises a pair of blocking plates positioned at two opposite distal ends of the first winding frame, and wherein each of the pair of second winding chassis comprises a first partition wall adjacent to the blocking plate.
6. The transformer as recited in claim 5, wherein a pair of gaps is formed between each of the pair of blocking plates and each of the pair of first partition walls to receive the pair of second sidewalls of the first winding chassis.
7. The transformer as recited in claim 1, wherein each of the pair of second winding chassis comprises a second opening to receive a corresponding second winding frame therein and facing to the second direction, and two pairs of locating plates projecting from an interior wall of the second opening and extending toward each other.
8. The transformer as recited in claim 7 wherein a height of each of the two pairs of locating plates is substantially equal to a depth of the second opening.
9. The transformer as recited in claim 7, wherein each of the pair of second winding frames comprises two pairs of second partition walls, a plurality of second partition plates between the two pairs of second partition walls, and a pair of locating slots each between the pair of second partition walls to receive the locating plates.
10. The transformer as recited in claim 1, wherein the first winding chassis is filled with colloid.
11. A bobbin used in a transformer, the bobbin comprising:
a first winding frame to wrap primary winding coils thereon;
a first winding chassis defining a first opening to receiving the first winding frame therein;
a pair of second winding chassis positioned at two opposite ends of the bobbin and each defining a second opening, wherein the first winding frame is positioned between the pair of second winding chassis;
a pair of second winding frames received in the second openings of the pair of second winding chassis to wrap secondary winding coils thereon, wherein each of the pair of second winding frames defines a through hole; and
a receiving hole extending through the pair of second winding chassis and the first winding frame and communicating with the through hole;
wherein the first opening of the first winding chassis faces to a first direction, and wherein each of the second openings of the second winding chassis faces to a second direction different from the first direction.
12. The bobbin as recited in claim 11, wherein the first direction is opposite to the second direction.
13. The bobbin as recited in claim 11, wherein the first direction is substantially perpendicular to the second direction.
14. The bobbin as recited in claim 11, wherein each of the pair of second winding chassis comprises two pairs of locating plates projecting from an interior wall of the second opening and extending toward each other.
15. The bobbin as recited in claim 14, wherein a height of each of the two pairs of locating plates is substantially equal to a depth of the second opening.
16. The bobbin as recited in claim 14, wherein the first winding chassis defines a pair of slots located at a distal end of a first sidewall of the first winding chassis, and a pair of apertures communicating with the first opening, the receiving hole, and the through hole, and located in a pair of second sidewalls of the first winding chassis.
17. The bobbin as recited in claim 16, wherein the first winding frame comprises a pair of blocking plates positioned two opposite distal ends of the first winding frame, and wherein each of the pair of second winding chassis comprises a first partition wall adjacent to the blocking plate.
18. The bobbin as recited in claim 17, wherein a pair of gaps is formed between each of the pair of blocking plates and each of the pair of first partition walls to receive the pair of second sidewalls of the first winding chassis.
19. The bobbin as recited in claim 14, wherein each of the pair of second winding frames comprises two pairs of second partition walls, a plurality of second partition plates between the two pairs of second partition walls, and a pair of locating slots each between the pair of second partition walls to receive the locating plates.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A solid electrolytic capacitor comprising a capacitor element with a solid electrolyte comprising an organic semiconductor having a specific resistance of not more than 10 \u03a9\xb7cm, wherein a thickness of an anode foil included in said capacitor element is 70\u02dc180 \u03bcm and an etched foil in used for said anode foil has a void factor of not less than 20% but not more than 51%.
2. A solid electrolytic capacitor comprising a capacitor element with a solid electrolyte comprising an organic semiconductor having a specific resistance of not more than 10 \u03a9\xb7cm, wherein a thickness of an anode foil included in said capacitor element is 50\u02dc180 \u03bcm and an etched foil in used for said anode foil has a void factor of not less than 20% but not more than 51%.
3. The solid electrolytic capacitor as claimed in claim 1, wherein a complex of thiophene derivative is used as said organic semiconductor.
4. The solid electrolytic capacitor as claimed in claim 2, wherein a complex of thiophene derivative is used as said organic semiconductor.
5. The solid electrolytic capacitor as claimed in claim 3, wherein the thiophene derivative comprises 3,4-ethylene-dioxy-thiophene.
6. The solid electrolytic capacitor as claimed in claim 4, wherein the thiophene derivative comprises 3,4-ethylene-dioxy-thiophene.
7. The solid electrolytic capacitor as claimed in claim 3, wherein a foil resistance rate of said electrode foil is 0.27\u02dc0.7 m\u03a9.
8. The solid electrolytic capacitor as claimed in claim 4, wherein a foil resistance rate of said electrode foil is 0.27\u02dc0.7 m\u03a9.